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An Empirical Approach to Correlating Thermo-Mechanical Fatigue Behaviour of a Polycrystalline Ni-Base Superalloy

机译:关联多晶镍基高温合金热机械疲劳行为的经验方法

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摘要

Assessment of thermo-mechanical fatigue behaviour of the polycrystalline nickel alloy RR1000 reveals a significant effect of phase angle on fatigue life. The current paper explores two scenarios: the first where the mechanical strain range is held constant and comparisons of the fatigue life are made for different phase angle tests; and secondly, the difference between the behaviour of In-phase (IP) and −180° Out-Of-Phase (OOP) tests over a variety of applied strain ranges. It is shown that different lifing approaches are currently required for the two scenarios, with a mean stress based approach being more applicable in the first case, whereas a Basquin-type model proves more applicable in the second. However, it is also demonstrated that the crack propagation phase should also be considered in these types of tests for high strain ranges and projects that future modelling approaches should attempt to unify mean stress, stress range and a crack propagation phase.
机译:对多晶镍合金RR1000的热机械疲劳行为的评估显示出相角对疲劳寿命的显着影响。本文探讨了两种情况:一种是使机械应变范围保持恒定,另一种是比较不同相角测试的疲劳寿命。其次,在各种应用应变范围内,同相(IP)和-180°异相(OOP)测试的性能差异。结果表明,两种情况下当前都需要不同的起居方法,其中基于平均压力的方法在第一种情况下更适用,而Basquin型模型在第二种情况下更适用。但是,也表明在高应变范围的这些类型的测试中也应考虑裂纹扩展阶段,并且未来的建模方法应尝试统一平均应力,应力范围和裂纹扩展阶段。

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